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The importance of biological oxidation of iron in the aerobic cells of the Wheal Jane pilot passive treatment system

机译:Wheal Jane飞行员被动处理系统中好氧细胞中铁的生物氧化的重要性

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The passive treatment system designed to treat the mine water discharge of the abandoned Wheal Jane tin mine in Cornwall consisted of a sequence of artificial wetland cells, an anaerobic cell and a final series of rock filters. Three systems were operated which differed only in the pre-treatment of the mine water before discharge to the aerobic wetland cells. The aerobic cells were deigned to promote aerobic oxidation and precipitation of iron which could exceed a concentration of 100 mg/l in the raw mine water discharge. The largest investment of land area was to the artificial wetland cells and it was important to understand the processes of oxidation and precipitation of iron so that the performance of this aspect the pilot passive treatment plant (PPTP) could be managed as efficiently as possible. The generally low pH of the influent mine water and inevitable trend of decreasing pH due to hydrolysis of Fe(III) meant that distinguishing between biotic and abiotic mechanisms was fundamental for further design planning of passive treatment systems. This paper describes these observations. (C) 2004 Elsevier B.V All rights reserved.
机译:被动处理系统旨在处理康沃尔郡废弃的Wheal Jane锡矿的矿井水,该系统由一系列人工湿地单元,一个厌氧单元和最后一系列的岩石过滤器组成。运行了三个系统,它们的区别仅在于对矿泉水的预处理,然后再排放到需氧湿地细胞中。设计好氧细胞以促进好氧氧化和铁的沉淀,在矿井的原水排放中,铁的浓度可能超过100 mg / l。土地面积最大的投资是用于人工湿地细胞,了解铁的氧化和沉淀过程非常重要,这样可以尽可能有效地管理试验性被动处理厂(PPTP)的性能。矿井水的pH通常较低,并且由于Fe(III)的水解而导致pH降低的趋势不可避免,这意味着区分生物机制和非生物机制是进一步设计被动处理系统的基础。本文介绍了这些观察结果。 (C)2004 Elsevier B.V保留所有权利。

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